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    三星

    三星

    Samsung Inc.
    企业EST. 1938
    8,954论文总数
    30.5万引用总数

    三星集团是韩国最大的企业集团,包括85个下属公司及若干其他法人机构,在近70个国家和地区建立了近300个法人及办事处,员工总数20余万人,业务涉及电子、金融、机械、化学等众多领域。

    论文量&引用量时间轴

    机构学者

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    Jong Min Kim
    Jong Min Kim
    Electrical Engineering Division, Department of Engineering, University of Cambridge;Cambridge Graphene Centre, University of Cambridge
    论文:187引用:0H-index:0
    Sungwoo Hwang
    Sungwoo Hwang
    Samsung Electronics
    论文:105引用:0H-index:0
    Y. Park
    Y. Park
    Nano Device Research Centre, Korea Institute of Science and Technology (KIST),
    论文:75引用:0H-index:0
    Chang-Jung Kim
    Chang-Jung Kim
    Semiconductor Device Laboratory, Samsung Advanced Institute of Technology
    论文:62引用:0H-index:0
    Hongxia Jin
    Hongxia Jin
    Samsung Research America
    论文:53引用:0H-index:0
    Sangyoon Lee
    Sangyoon Lee
    Super Resolution Image Processing Lab, Yonsei University
    论文:52引用:0H-index:0
    Seok-Gwang Doo
    Seok-Gwang Doo
    Energy & Environment Lab., Samsung Advanced Institute of Technology
    论文:47引用:0H-index:0
    Naesung Lee
    Naesung Lee
    Materials Research Laboratory, The Pennsylvania State University
    论文:45引用:0H-index:0
    Dong-Jin Yun
    Dong-Jin Yun
    Advanced Material Research Center, Samsung Advanced Institute of Technology
    论文:45引用:0H-index:0

    论文(8956)

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    1LeWorldModel: Stable End-to-End Joint-Embedding Predictive Architecture from Pixels
    Lucas Maes, Quentin Le Lidec,Damien Scieur,Yann LeCun,Randall Balestriero

    Joint Embedding Predictive Architectures (JEPAs) offer a compelling framework for learning world models in compact latent spaces, yet existing methods remain fragile, relying on complex multi-term losses, exponential moving averages, pre-trained encoders, or auxiliary supervision to avoid representation collapse. In this work, we introduce LeWorldModel (LeWM), the first JEPA that trains stably end-to-end from raw pixels using only two loss terms: a next-embedding prediction loss and a regularizer enforcing Gaussian-distributed latent embeddings. This reduces tunable loss hyperparameters from six to one compared to the only existing end-to-end alternative. With 15M parameters trainable on a single GPU in a few hours, LeWM plans up to 48x faster than foundation-model-based world models while remaining competitive across diverse 2D and 3D control tasks. Beyond control, we show that LeWM's latent space encodes meaningful physical structure through probing of physical quantities. Surprise evaluation confirms that the model reliably detects physically implausible events.

    2026引用:174
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    2NewtonGen: Physics-Consistent and Controllable Text-to-Video Generation Via Neural Newtonian Dynamics
    Yu Yuan, Xijun Wang, Tharindu Wickremasinghe, Zeeshan Nadir, Bole Ma,Stanley H. Chan

    A primary bottleneck in large-scale text-to-video generation today is physical consistency and controllability. Despite recent advances, state-of-the-art models often produce unrealistic motions, such as objects falling upward, or abrupt changes in velocity and direction. Moreover, these models lack precise parameter control, struggling to generate physically consistent dynamics under different initial conditions. We argue that this fundamental limitation stems from current models learning motion distributions solely from appearance, while lacking an understanding of the underlying dynamics. In this work, we propose NewtonGen, a framework that integrates data-driven synthesis with learnable physical principles. At its core lies trainable Neural Newtonian Dynamics (NND), which can model and predict a variety of Newtonian motions, thereby injecting latent dynamical constraints into the video generation process. By jointly leveraging data priors and dynamical guidance, NewtonGen enables physically consistent video synthesis with precise parameter control. All data and code are available at https://github.com/pandayuanyu/NewtonGen.

    ICLR 2026引用:31
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    3Trust Region On-Policy Distillation
    Xingrun Xing,Haoqing Wang,Boyan Gao, Ziheng Li,Yehui Tang

    On-Policy Distillation (OPD) is a fundamental technique for efficient post-training of large language models (LLMs), with broad applications in agent learning, multi-task enhancement, and model compression. However, OPD training becomes unstable when the teacher and student distributions differ substantially, as teacher supervision on student-generated tokens may yield unreliable policy gradients and even cause optimization failure. This work addresses reliable on-policy token-level supervision through credit assignment strategies, and proposes Trust Region On-Policy Distillation, TrOPD. It features the following characteristics: 1) Trust-Region On-Policy Learning: TrOPD performs OPD only in regions where the teacher provides reliable supervision, mitigating the optimization difficulty of the K1 reverse-KL estimator under distribution mismatch. 2) Outlier Estimation: For outlier regions, we explore gradient clipping, masking, and forward-KL estimation to reduce the adverse effects of unreliable supervision. 3) Off-Policy Guidance: The student continues generation from teacher prefixes and uses forward KL to imitate off-policy guidance, encouraging on-policy exploration toward reliable regions. Experiments show that TrOPD consistently outperforms SoTA OPD baselines, including OPD, EOPD, and REOPOLD, across mathematical reasoning, code generation, and general-domain benchmarks.

    2026引用:21
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    4HiMAE: Hierarchical Masked Autoencoders Discover Resolution-Specific Structure in Wearable Time Series
    Simon A. Lee, Cyrus Tanade, Hao Zhou, Juhyeon Lee, Megha Thukral, Md Sazzad Hissain Khan, Keum San Chun, Baiying Lu,Migyeong Gwak,Mehrab Bin Morshed,Viswam Nathan,Md Mahbubur Rahman,

    Wearable sensors provide abundant physiological time series observations, yet the resolution at which we should extract features for downstream tasks remain unclear. We hypothesize that temporal resolution is a fundamental axis of representation learning, with different clinical and behavioral outcomes relying on features at distinct scales. To test this resolution hypothesis, we introduce HiMAE (Hierarchical Masked Autoencoder), a self-supervised framework that combines masked autoencoding with a hierarchical convolutional encoder–decoder. HiMAE produces multi-resolution embeddings across its intermediate layers that enable systematic evaluation of which temporal scales carry predictive signal, transforming resolution from a hyperparameter into a probe for interpretability. Across classification and generative benchmarks, HiMAE consistently outperforms state-of-the-art foundation models that collapse scale, while being orders of magnitude smaller. Due to the convolution based design choices behind HiMAE, the model is also compact enough to run entirely on-device, achieving sub-millisecond inference on smartwatch-class CPUs for true edge inference. Together, these contributions position HiMAE as both an efficient self supervised learning method and a discovery tool for understanding how time resolution contributes to downstream task alignment.

    ICLR 2026引用:14
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    5One-Step Generative Policies with Q-Learning: A Reformulation of MeanFlow
    Zeyuan Wang,Da Li, Yulin Chen,Ye Shi,Liang Bai,Tianyuan Yu,Yanwei Fu

    We introduce a one-step generative policy for offline reinforcement learning that maps *noise* directly to *actions* via a *residual reformulation* of MeanFlow, making it compatible with Q-learning. While one-step Gaussian policies enable fast inference, they struggle to capture complex, multimodal action distributions. Existing flow-based methods improve expressivity but typically rely on distillation and two-stage training when trained with Q-learning. To overcome these limitations, we propose to reformulate MeanFlow to enable *direct noise-to-action generation* by integrating the velocity field and noise-to-action transformation into a single policy network—eliminating the need for separate velocity estimation. We explore several reformulation variants and identify an effective *residual formulation* that supports expressive and stable policy learning. Our method offers three key advantages: 1) efficient one-step noise-to-action generation, 2) expressive modelling of multimodal action distributions, and 3) efficient and stable policy learning via Q-learning in a single-stage training setup. Extensive experiments on 73 tasks across the OGBench and D4RL benchmarks demonstrate that our method achieves strong performance in both offline and offline-to-online reinforcement learning settings.

    2026AAAI 2026(2026)引用:13
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    合作机构(100)

    首尔大学合作论文 614
    成均馆大学合作论文 478
    延世大学合作论文 276
    朝鲜大学校合作论文 263
    汉阳大学合作论文 224
    Korea Advanced Institute of Science and Technology合作论文 224
    三星电子合作论文 181
    Korea Institute of Science and Technology合作论文 145
    浦项科技大学合作论文 144
    韩国庆熙大学合作论文 93

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